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Newtonian Kinetic Isotope Effects. Observation Prediction and Origin of Heavy-Atom Dynamic Isotope Effects

机译:牛顿动力学同位素效应。观测预测和重原子同位素动态效果的起源

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摘要

Intramolecular 13C kinetic isotope effects were determined for the dimerization of cyclopentadiene. Substantial isotope effects were observed in three positions, despite the C2 symmetry of the cycloaddition transition state and the absence of dynamical bottlenecks after this transition state. The observed isotope effects were predicted well from trajectory studies by extrapolating the outcomes of trajectories incorporating superheavy isotopes of carbon, ranging from 20C to 140C. Trajectory studies suggest that the isotope effects are unrelated to zero-point energy or the geometrical and momentum properties of the transition state. However, steepest-descent paths in mass-weighted coordinates correctly predict the direction of the isotope effects, supporting a novel origin in Newton’s second law of motion.

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